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/* Distributed under the OSI-approved BSD 3-Clause License. See accompanying
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file Copyright.txt or https://cmake.org/licensing for details. */
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#include <cm/string_view>
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#include <stdio.h>
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#include <cm_utf8.h>
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using test_utf8_char = const cm::string_view;
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static void byte_array_print(test_utf8_char s)
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{
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bool started = false;
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printf("[");
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for (char c : s) {
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if (started) {
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printf(",");
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}
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started = true;
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printf("0x%02X", static_cast<unsigned char>(c));
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}
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printf("]");
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}
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struct test_utf8_entry
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{
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test_utf8_char str;
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unsigned int chr;
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};
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static test_utf8_entry const good_entry[] = {
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{ "\x20", 0x0020 }, /* Space. */
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{ "\xC2\xA9", 0x00A9 }, /* Copyright. */
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{ "\xE2\x80\x98", 0x2018 }, /* Open-single-quote. */
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{ "\xE2\x80\x99", 0x2019 }, /* Close-single-quote. */
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{ "\xF0\xA3\x8E\xB4", 0x233B4 }, /* Example from RFC 3629. */
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{ "\xED\x80\x80", 0xD000 }, /* Valid 0xED prefixed codepoint. */
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{ "\xF4\x8F\xBF\xBF", 0x10FFFF }, /* Highest valid RFC codepoint. */
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{ {}, 0 }
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};
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static test_utf8_char const bad_chars[] = {
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"\x80", /* Leading continuation byte. */
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"\xC0\x80", /* Overlong encoding. */
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"\xC1\x80", /* Overlong encoding. */
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"\xC2", /* Missing continuation byte. */
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"\xE0", /* Missing continuation bytes. */
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"\xE0\x80\x80", /* Overlong encoding. */
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"\xF0\x80\x80\x80", /* Overlong encoding. */
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"\xED\xA0\x80", /* UTF-16 surrogate half. */
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"\xED\xBF\xBF", /* UTF-16 surrogate half. */
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"\xF4\x90\x80\x80", /* Lowest out-of-range codepoint. */
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"\xF5\x80\x80\x80", /* Prefix forces out-of-range codepoints. */
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{}
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};
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static char const* good_strings[] = { "", "ASCII", "\xC2\xA9 Kitware", 0 };
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static char const* bad_strings[] = {
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"\xC0\x80", /* Modified UTF-8 for embedded 0-byte. */
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0
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};
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static void report_good(bool passed, test_utf8_char c)
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{
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printf("%s: decoding good ", passed ? "pass" : "FAIL");
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byte_array_print(c);
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printf(" (%s) ", c.data());
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}
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static void report_bad(bool passed, test_utf8_char c)
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{
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printf("%s: decoding bad ", passed ? "pass" : "FAIL");
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byte_array_print(c);
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printf(" ");
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}
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static bool decode_good(test_utf8_entry const& entry)
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{
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const auto& s = entry.str;
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unsigned int uc;
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if (const char* e =
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cm_utf8_decode_character(s.data(), s.data() + s.size(), &uc)) {
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int used = static_cast<int>(e - s.data());
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if (uc != entry.chr) {
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report_good(false, s);
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printf("expected 0x%04X, got 0x%04X\n", entry.chr, uc);
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return false;
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}
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if (used != int(s.size())) {
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report_good(false, s);
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printf("had %d bytes, used %d\n", int(s.size()), used);
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return false;
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}
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report_good(true, s);
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printf("got 0x%04X\n", uc);
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return true;
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}
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report_good(false, s);
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printf("failed\n");
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return false;
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}
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static bool decode_bad(test_utf8_char s)
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{
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unsigned int uc = 0xFFFFu;
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const char* e = cm_utf8_decode_character(s.data(), s.data() + s.size(), &uc);
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if (e) {
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report_bad(false, s);
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printf("expected failure, got 0x%04X\n", uc);
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return false;
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}
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report_bad(true, s);
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printf("failed as expected\n");
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return true;
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}
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static void report_valid(bool passed, test_utf8_char s)
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{
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printf("%s: validity good ", passed ? "pass" : "FAIL");
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byte_array_print(s);
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printf(" (%s) ", s.data());
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}
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static void report_invalid(bool passed, test_utf8_char s)
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{
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printf("%s: validity bad ", passed ? "pass" : "FAIL");
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byte_array_print(s);
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printf(" ");
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}
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static bool is_valid(test_utf8_char s)
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{
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bool valid = cm_utf8_is_valid(s.data()) != 0;
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if (!valid) {
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report_valid(false, s);
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printf("expected valid, reported as invalid\n");
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return false;
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}
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report_valid(true, s);
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printf("valid as expected\n");
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return true;
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}
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static bool is_invalid(test_utf8_char s)
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{
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bool valid = cm_utf8_is_valid(s.data()) != 0;
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if (valid) {
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report_invalid(false, s);
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printf("expected invalid, reported as valid\n");
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return false;
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}
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report_invalid(true, s);
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printf("invalid as expected\n");
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return true;
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}
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int testUTF8(int /*unused*/, char* /*unused*/[])
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{
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int result = 0;
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for (test_utf8_entry const* e = good_entry; !e->str.empty(); ++e) {
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if (!decode_good(*e)) {
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result = 1;
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}
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if (!is_valid(e->str)) {
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result = 1;
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}
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}
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for (test_utf8_char* c = bad_chars; !(*c).empty(); ++c) {
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if (!decode_bad(*c)) {
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result = 1;
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}
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if (!is_invalid(*c)) {
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result = 1;
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}
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}
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for (char const** s = good_strings; *s; ++s) {
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if (!is_valid(*s)) {
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result = 1;
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}
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}
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for (char const** s = bad_strings; *s; ++s) {
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if (!is_invalid(*s)) {
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result = 1;
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}
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}
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return result;
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}
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